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IOP Publishing, Reports on Progress in Physics, 3(76), p. 036501

DOI: 10.1088/0034-4885/76/3/036501

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Theory of the Spin Seebeck Effect

Journal article published in 2012 by Hiroto Adachi ORCID, Ken-Ichi Uchida, Eiji Saitoh, Sadamichi Maekawa
This paper is available in a repository.
This paper is available in a repository.

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Abstract

The spin Seebeck effect refers to the generation of a spin voltage caused by a temperature gradient in a ferromagnet, which enables the thermal injection of spin currents from the ferromagnet into an attached nonmagnetic metal over a macroscopic scale of several millimeters. The inverse spin Hall effect converts the injected spin current into a transverse charge voltage, thereby producing electromotive force as in the conventional charge Seebeck device. Recent theoretical and experimental efforts have shown that the magnon and phonon degrees of freedom play crucial roles in the spin Seebeck effect. In this article, we present the theoretical basis for understanding the spin Seebeck effect and briefly discuss other thermal spin effects. ; Comment: 39 pages, 15 figures